RI 9579 - Numerical Modeling Analysis of Stress Transfer Modification Concepts for Deep Longwall Mines

The National Institute for Occupational Safety and Health (NIOSH)
Thomas L. Vandergrift
Organization:
The National Institute for Occupational Safety and Health (NIOSH)
Pages:
48
File Size:
4250 KB
Publication Date:
Jan 1, 2010

Abstract

This U. S. Bureau of Mines (USBM) report evaluates three stress-transfer-modification concepts for their potential in reducing longwall gate road stresses and closures. In each of the three concepts - packwalling, gob infilling, and entry filling -support structures are constructed on the headgate side of the panel parallel with or inby the face line. When the headgate becomes the tailgate of the adjacent panel, these structures are in place to accept stresses transferred from the mined-out panel. Using the USBM nonlinear boundary-element program MULSIM/NL, baseline models of typical longwall stress transfer behavior were developed for both intermediate depth and deep mining conditions. These models were verified by comparing model results with field measurements and observations. The stress-transfer-modification concepts were then incorporated into the deep baseline model to quantify the effects of each concept on tailgate closure. Modeling results indicated that entry filling is the most effective concept in reducing tailgate escapeway closure. Using only 18 m3 of a weak fill per meter of face advance (7.3 yd3 per ft of face advance), tailgate escapeway closure was reduced by 33%. By improving the quality of the fill, similar results were achieved using 50% less volume.
Citation

APA: Thomas L. Vandergrift  (2010)  RI 9579 - Numerical Modeling Analysis of Stress Transfer Modification Concepts for Deep Longwall Mines

MLA: Thomas L. Vandergrift RI 9579 - Numerical Modeling Analysis of Stress Transfer Modification Concepts for Deep Longwall Mines. The National Institute for Occupational Safety and Health (NIOSH), 2010.

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